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Published on: December 8, 2023
Meningococcal outer membrane vesicle vaccines derived from mutant strains engineered to express factor H binding
Oliver Koeberling1, Serena Giuntini, Anja Seubert
1Novartis Vaccines, Siena, Italy.
Abstract:
Meningococcal outer membrane vesicle (OMV) vaccines, which are treated with detergents to decrease endotoxin activity, are safe and effective in humans. However, the vaccines elicit serum bactericidal antibody responses largely directed against PorA, which is antigenically variable. We previously prepared a native (non-detergent-treated) OMV vaccine from a mutant of group B strain H44/76 in which the lpxL1 gene was inactivated, which resulted in penta-acylated lipid A with attenuated endotoxin activity. To enhance protection, we overexpressed factor H binding protein (fHbp) from the antigenic variant 1 group. The vaccine elicited broad serum bactericidal antibody responses in mice against strains with fHbp variant 1 (approximately 70% of group B isolates) but not against strains with variant 2 or 3. In the present study, we constructed a mutant of group B strain NZ98/254 with attenuated endotoxin that expressed both endogenous variant 1 and heterologous fHbp variant 2. A mixture of the two native OMV vaccines from the H44/76 and NZ98/254 mutants stimulated proinflammatory cytokine responses by human peripheral blood mononuclear cells similar to those stimulated by control, detergent-treated OMV vaccines from the wild-type strains. In mice, the mixture of the two native OMV vaccines elicited broad serum bactericidal antibody responses against strains with heterologous PorA and fHbp in the variant 1, 2, or 3 group. By adsorption studies, the principal bactericidal antibody target was determined to be fHbp. Thus, native OMV vaccines from mutants expressing fHbp variants have the potential to be safe for humans and to confer broad protection against meningococcal disease from strains expressing fHbp from each of the antigenic variant groups.
Insights
New native outer membrane vesicle (OMV) vaccines targeting factor H binding protein (fHbp) show potential for broad protection against meningococcal disease. These safe, non-detergent-treated vaccines elicit robust antibody responses against diverse bacterial strains.
Area of Science:
- Vaccinology
- Microbiology
- Immunology
Background:
- Current meningococcal outer membrane vesicle (OMV) vaccines are safe but target antigenically variable PorA.
- Native OMV vaccines with attenuated endotoxin activity have been developed.
- Overexpression of factor H binding protein (fHbp) aims to broaden vaccine efficacy.
Purpose of the Study:
- To develop and evaluate native OMV vaccines with enhanced breadth of protection against Neisseria meningitidis.
- To assess the safety and immunogenicity of a mixture of two native OMV vaccines expressing different fHbp variants.
Main Methods:
- Construction of native OMV vaccines from Neisseria meningitidis group B mutants with inactivated lpxL1 gene for attenuated endotoxin.
- Overexpression of fHbp variants (1 and 2) in these native OMV vaccines.
- Assessment of cytokine responses in human peripheral blood mononuclear cells and serum bactericidal antibody responses in mice.
Main Results:
- A mixture of two native OMV vaccines (from H44/76 and NZ98/254 mutants) elicited broad serum bactericidal antibody responses in mice against strains with fHbp variants 1, 2, and 3.
- These native OMV vaccines stimulated proinflammatory cytokine responses comparable to conventional detergent-treated OMV vaccines.
- Adsorption studies identified fHbp as the primary target for bactericidal antibodies.
Conclusions:
- Native OMV vaccines derived from mutants expressing fHbp variants offer a promising strategy for broad protection against meningococcal disease.
- These vaccines have the potential to be safe for human use.
- The fHbp antigen is a key target for developing broadly protective meningococcal vaccines.
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